The peak discharge is given as \( 180 \, {m}^3/{s} \), and the base flow is \( 30 \, {m}^3/{s} \). The infiltration loss is 0.2 cm/h, and the total rainfall depth is 6.6 cm.
The peak of the 3-hour unit hydrograph \( Q_p \) is calculated using the formula:
\[
Q_p = \frac{{Peak discharge} - {Base flow}}{R - \phi t}
\]
Where:
- Peak discharge = \( 180 \, {m}^3/{s} \)
- Base flow = \( 30 \, {m}^3/{s} \)
- \( R = 6.6 \, {cm} \) (rainfall depth)
- \( \phi = 0.2 \, {cm/h} \) (infiltration loss)
- \( t = 3 \, {hours} \) (duration of the storm)
Substitute the values into the formula:
\[
Q_p = \frac{180 - 30}{6.6 - 0.2 \times 3} = \frac{150}{5.4} = 27.78 \, {m}^3/{s}
\]
Thus, the peak value of the 3-hour unit hydrograph is \( 25 \, {m}^3/{s} \).